Zitieren

1. Baroiu, N., David, M., Susac, F. (2014) Study concerning the ball joint functionality of a vehicle steering system, The Annals of “Dunărea De Jos” University Of Galaţi Fascicle V, Technologies In Machine Building, 49-54. Search in Google Scholar

2. Burcham, M. N. (2017) Characterization and failure analysis of an automotive ball joint, J Fail. Anal. and Preven., 17, 262–274, DOI 10.1007/s11668-017-0240-4. Search in Google Scholar

3. Chow, G.C. (1995) Ekonometria, PWN, Warszawa. Search in Google Scholar

4. Chudzik, A., Warda, B. (2019) Effect of radial internal clearance on the fatigue life of the radial cylindrical roller bearing, Eksploatacja i Niezawodnosc – Maintenance and Reliability, 21(2), 211–219, http://dx.doi.org/10.17531/ein.2019.2.4.10.17531/ein.2019.2.4 Search in Google Scholar

5. Crolla, D. (2009) Automotive engineering: powertrain, chassis system and vehicle body. Search in Google Scholar

6. Geren, N., Akçalı, O. O., Bayramoğlu, M. (2017) Parametric design of automotive ball joint based on variable design methodology using knowledge and feature-based computer assisted 3D modelling, Engineering Applications of Artificial Intelligence, 66, 87-103.10.1016/j.engappai.2017.08.011 Search in Google Scholar

7. Hyspan, Quality Test Report, Summary Test Report Ball Joint Life Cycle Test Solar Plant Installations. Search in Google Scholar

8. Kashyzadeh, K. R. (2020) Effects of Axial and Multiaxial Variable Amplitude Loading Conditions on the Fatigue Life Assessment of Automotive Steering Knuckle, Journal of Failure Analysis and Prevention, 1-9. Search in Google Scholar

9. Kozłowski, E. (2015) Analiza i identyfikacja szeregów czasowych, Politechnika Lubelska Search in Google Scholar

10. Kozłowski, E., Mazurkiewicz, D., Żabiński, T., Prucnal, S., Sęp, J. (2019) Assessment model of cutting tool condition for real-time supervision system, Eksploatacja i Niezawodnosc – Maintenance and Reliability, 21(4), 679–685, http://dx.doi.org/10.17531/ein.2019.4.18.10.17531/ein.2019.4.18 Search in Google Scholar

11. Michalak, R., Pietruszewski, R., & Pawelski, Z. (2011) Diagnostic simulation testing of the suspension system of an automotive vehicle, Archiwum Motoryzacji, 1, 205-214.10.5604/1234754X.1067037 Search in Google Scholar

12. Muscă, I., Românu, I. C., Gagea, A. (2020) Preliminary study of friction in automotive ball joints, IOP Conference Series: Materials Science and Engineering, 724(1), 012020. IOP Publishing.10.1088/1757-899X/724/1/012020 Search in Google Scholar

13. Rutci, A., Eren, F.S. (2018) Investigation of Suspension Ball Joint Pull Out Force Based on FEA Method and Experimental Study, The 6th International Symposium on Innovative Technologies in Engineering and Science 09-11, 1002-1009.10.33793/acperpro.01.01.165 Search in Google Scholar

14. Servotest, Ball Joint Test Systems. Search in Google Scholar

15. Szymczak, T., Brodecki, A., Kowalewski, Z.L., Lasota, P. (2018) Experimental assessment of fatigue durability of steering rod tip, Transport Samochodowy, 2, 63-72. Search in Google Scholar

16. Szymczak, T., Brodecki, A., Eminger, A., Kowalewski, Z. L., Rudnik, D. (2016) Experimental Assessment of Ball Joints Operation Using Servo-Hydraulic Testing Systems. In Solid State Phenomena, Trans Tech Publications Ltd., 240, 232-237. Search in Google Scholar

17. Welfe, A. (2003) Ekonometria, PWE. Search in Google Scholar

18. Zaharia, S. M. (2019) The methodology of fatigue lifetime prediction and validation based on accelerated reliability testing of the rotor pitch links, Eksploatacja i Niezawodnosc – Maintenance and Reliability, 21(4), 638–644, http://dx.doi.org/10.17531/ein.2019.4.13.10.17531/ein.2019.4.13 Search in Google Scholar

eISSN:
1407-6179
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Technik, Einführungen und Gesamtdarstellungen, andere